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All-codon scanning identifies p53 cancer rescue mutations

机译:全密码子扫描识别p53癌症拯救突变

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In vitro scanning mutagenesis strategies are valuable tools to identify critical residues in proteins and to generate proteins with modified properties. We describe the fast and simple All-Codon Scanning (ACS) strategy that creates a defined gene library wherein each individual codon within a specific target region is changed into all possible codons with only a single codon change per mutagenesis product. ACS is based on a multiplexed overlapping mutagenesis primer design that saturates only the targeted gene region with single codon changes. We have used ACS to produce single amino-acid changes in small and large regions of the human tumor suppressor protein p53 to identify single amino-acid substitutions that can restore activity to inactive p53 found in human cancers. Single-tube reactions were used to saturate defined 30-nt regions with all possible codon changes. The same technique was used in 20 parallel reactions to scan the 600-bp fragment encoding the entire p53 core domain. Identification of several novel p53 cancer rescue mutations demonstrated the utility of the ACS approach. ACS is a fast, simple and versatile method, which is useful for protein structure-function analyses and protein design or evolution problems.
机译:体外扫描诱变策略是鉴定蛋白质中关键残基并产生具有修饰特性的蛋白质的有价值的工具。我们描述了快速和简单的全密码子扫描(ACS)策略,该策略创建了一个定义的基因库,其中每个特定诱变产物将特定目标区域内的每个单个密码子更改为所有可能的密码子。 ACS基于多重重叠诱变引物设计,该设计仅使具有单个密码子变化的目标基因区域饱和。我们已经使用ACS在人类抑癌蛋白p53的小区域和大区域产生单个氨基酸变化,以鉴定可以恢复人类癌症中失活的p53活性的单个氨基酸取代。单管反应用于饱和具有所有可能的密码子变化的30-nt区域。在20个平行反应中使用了相同的技术来扫描编码整个p53核心域的600 bp片段。几个新的p53癌症挽救突变的鉴定证明了ACS方法的实用性。 ACS是一种快速,简单且通用的方法,可用于蛋白质结构功能分析以及蛋白质设计或进化问题。

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